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幽门螺杆菌镍载体 HypA 的结构与动力学:使用 NMR 光谱、功能测定和计算工具的综合方法。

Structure and dynamics of Helicobacter pylori nickel-chaperone HypA: an integrated approach using NMR spectroscopy, functional assays and computational tools.

机构信息

JSC Spronk, Vilnius, Lithuania.

Department of Molecular and Cell Biology, Leicester Institute of Structural and Chemical Biology, University of Leicester, Leicester, UK.

出版信息

J Biol Inorg Chem. 2018 Dec;23(8):1309-1330. doi: 10.1007/s00775-018-1616-y. Epub 2018 Sep 27.

DOI:10.1007/s00775-018-1616-y
PMID:30264175
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6733409/
Abstract

Helicobacter pylori HypA (HpHypA) is a metallochaperone necessary for maturation of [Ni,Fe]-hydrogenase and urease, the enzymes required for colonization and survival of H. pylori in the gastric mucosa. HpHypA contains a structural Zn(II) site and a unique Ni(II) binding site at the N-terminus. X-ray absorption spectra suggested that the Zn(II) coordination depends on pH and on the presence of Ni(II). This study was performed to investigate the structural properties of HpHypA as a function of pH and Ni(II) binding, using NMR spectroscopy combined with DFT and molecular dynamics calculations. The solution structure of apo,Zn-HpHypA, containing Zn(II) but devoid of Ni(II), was determined using 2D, 3D and 4D NMR spectroscopy. The structure suggests that a Ni-binding and a Zn-binding domain, joined through a short linker, could undergo mutual reorientation. This flexibility has no physiological effect on acid viability or urease maturation in H. pylori. Atomistic molecular dynamics simulations suggest that Ni(II) binding is important for the conformational stability of the N-terminal helix. NMR chemical shift perturbation analysis indicates that no structural changes occur in the Zn-binding domain upon addition of Ni(II) in the pH 6.3-7.2 range. The structure of the Ni(II) binding site was probed using H NMR spectroscopy experiments tailored to reveal hyperfine-shifted signals around the paramagnetic metal ion. On this basis, two possible models were derived using quantum-mechanical DFT calculations. The results provide a comprehensive picture of the Ni(II) mode to HpHypA, important to rationalize, at the molecular level, the functional interactions of this chaperone with its protein partners.

摘要

幽门螺杆菌 HypA(HpHypA)是一种金属伴侣蛋白,对于 [Ni,Fe]-氢化酶和脲酶的成熟是必需的,而这些酶是幽门螺杆菌在胃黏膜中定植和存活所必需的。HpHypA 含有一个结构 Zn(II) 位点和一个位于 N 端的独特 Ni(II) 结合位点。X 射线吸收光谱表明,Zn(II) 配位取决于 pH 值和 Ni(II) 的存在。本研究旨在使用 NMR 光谱结合 DFT 和分子动力学计算,研究 HpHypA 的结构特性作为 pH 值和 Ni(II) 结合的函数。使用 2D、3D 和 4D NMR 光谱确定了含有 Zn(II)但不含 Ni(II)的 apo,Zn-HpHypA 的溶液结构。该结构表明,Ni 结合和 Zn 结合结构域通过短接头连接,可发生相互重定向。这种灵活性对幽门螺杆菌的酸存活或脲酶成熟没有生理影响。原子分子动力学模拟表明,Ni(II)结合对于 N 端螺旋的构象稳定性很重要。NMR 化学位移扰动分析表明,在 pH 6.3-7.2 范围内加入 Ni(II)时,Zn 结合结构域不会发生结构变化。使用专门设计的 H NMR 光谱实验探测 Ni(II)结合位点的结构,以揭示顺磁金属离子周围的超精细位移信号。在此基础上,使用量子力学 DFT 计算得出了两种可能的模型。这些结果提供了 HpHypA 与 Ni(II)相互作用的综合图像,对于在分子水平上合理推断这种伴侣蛋白与其蛋白伴侣的功能相互作用非常重要。

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